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Stainless steel manifolds
  • Stainless steel manifolds

A BETTER WAY TO BUILD STAINLESS-STEEL BOOSTER MANIFOLDS

Engineered around your pump arrangement, operating requirements and connection standards— not selected

from a fixed catalogue.

Custom cold-formed manifold assemblies for booster-system manufacturers seeking lighter construction, controlled branch geometry and reliable OEM production.

Taiwan-based international project support, specialized

stainless-steel manufacturing and more than 10+ years

of supply experience with U.S. customers.

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Taiwan-Based

Project Support

International sales, engineering coordination and customer support from Taiwan.

Specialized Manufacturing in GuangDong, China 

Advanced equipment, skilled team and strict quality control for consistent OEM production. 

Custom-Engineered for Your System

Proven Experience

with U.S. Customers

Every manifold is built to your drawing, specifications and applications requirements.

More than 10 years of customized supply with a strong quality field-control record.

WHAT IS YOUR BOOSTER SYSTEM USING TODAY?

Booster-system manufacturers use different manifold materials and fabrication methods depending on application, history and internal production capability.

Yurong helps OEMs evaluate whether a custom cold-formed stainless-steel manifold can provide a better fit for their next design.

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USING HEAVY FABRICATED PIPE?

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ALREADY USING STAINLESS STEEL?

USING PVC OR CPVC?

Explore whether an application-specific optimized-wall design can reduce unnecessary material and system weight.

Evaluate a durable stainless-steel alternative for demanding commercial and industrial booster applications.

Compare conventional branch-over-opening construction with controlled pull-out branch forming.

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ENGINEERING AND MANUFACTURING CAPABILITY

30+ Years

Stainless steel fabrication & international pump-industry experience

Custom manifold configurations developed for OEM applications

600+
​Custom 
Designs

Material options selected according to water quality, corrosion requirements and customer specifications.

Main-header sizes available according to project requirements, including large custom diameters.

Large Custom Header Diameters

SS304 AND316

Built for booster-system OEMs who demand quality, consistency and long-term supply spport.

Every completed manifold is mechanically pressure-tested according to the approved inspection plan and order requirements.

Mechanical Pressure Testing

10+ Years Serving U.S. Customers

Customized OEM supply supported by a strong field-quality record.

Serving OEM customers across North America, South America, Europe, Asia Pacific, the Middle East and Africa.

BUILT AROUND THE BOOSTER SYSTEM—
NOT AROUND A CATALOGUE

Every Yurong manifold is manufactured according to the customer’s system layout,

pump spacing, branch size, pressure requirement, connection standard and production needs.

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CUSTOM-ENGINEERED FOR EACH SYSTEM

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APPLICATION-SPECIFIC WALL THICKNESS

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CONTROLLED PULL-OUT BRANCH GEOMETRY

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PRODUCTION-READY

MANIFOLD ASSEMBLIES

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BUILT FOR REPEAT OEM PRODUCTION

Header diameter, branch spacing, pump connections, instrumentation ports, end connections, surface treatment and overall dimensions are developed according to the customer’s approved design.

A branch collar is mechanically formed from the main header before welding, creating a more controlled transition than a branch positioned directly over a cut opening.

Yurong supplies completed manifold assemblies that can reduce the customer’s internal cutting, branch fitting, welding, finishing, inspection and coordination work.

Wall thickness is selected according to manifold size, material, geometry, operating pressure, test pressure and customer requirements. The objective is not simply to use thinner material, but to avoid unnecessary weight and material where the design permits.

Yurong supports prototypes, drawing revisions, repeat orders, private labeling, project-specific inspection requirements and long-term OEM production.

PULL-OUT FORMING TECHNOLOGY

Conventional manifold construction often requires a large opening to be cut in the main pipe before the branch is positioned and welded.

With pull-out forming, a controlled branch neck is formed from the wall of the main pipe. The branch connection is then completed using an approved welding process.

 

This method can provide a smoother internal transition, improved branch positioning consistency, reduced internal protrusions, more repeatable production and a cleaner finished appearance.

CONVENTIONAL WELDED METHOD   V.S.   YURONG TECHNOLOGY

Conventional Welded Manifolds
YuRong Pull-Out Technology
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Internal welding marks

Flow disturbance

Higher pressure Loss

Quality variation

More maintenance

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Smooth internal flow

Reduced turbulence

Lower pressure Loss

Consistent quality 

Longer system life

V.S.

MANIFOLDS FOR DIFFERENT BOOSTER SYSTEM CONFIGURATIONS

Custom solutions for vertical multistage, horizontal, multi-pump and project-specific booster packages.

Industrial pump system with stainless steel manifolds.
ENGINEERED FOR BOOSTER SYSTEMS
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Commercial

Buildings

YURONG stainless steel manifolds are designed to meet the demanding requirements of booster system applications in a wide range of industries.

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Hotels

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HVAC

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Municipal 

Water

Supply

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Industrial

Water

System

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In conventional manifold fabrication, an opening is cut into the main header and a branch pipe is positioned directly over the opening before welding.

With pull-out forming, a controlled collar is mechanically drawn from the header wall. The branch connection is then fitted and welded to the formed collar.

WHAT IS COLD-FORMED PULL-OUT MANIFOLD TECHNOLOGY?

Pull-out forming does not eliminate welding. Its purpose is to create a more controlled branch foundation before welding, supporting improved branch alignment, reduced internal protrusion and more repeatable production.

CONTROLLED BRANCH POSITIONING

REDUCED INTERNAL

WELD INTRUSION

CLEANER INTERNAL TRANSITION

REPEATABLE

PRODUCTION

The formed collar helps establish branch location and alignment before welding.

The branch geometry can help minimize unnecessary weld protrusion into the flow path.

The formed collar creates a more gradual transition than some conventional surface-mounted branch constructions.

Controlled forming and fixture-based welding support consistent branch spacing and geometry across repeat orders.

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